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Radiation effects on natural convection laminar flow from a horizontal circular cylinder

机译:辐射对水平圆柱体自然对流层流的影响

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The effect of radiation on natural convection flow from an isothermal circular cylinder has been investigated numerically in this study. The governing boundary layer equations of motion are transformed into a non-dimensional form and the resulting nonlinear systems of partial differential equations are reduced to convenient boundary layer equations, which are then solved numerically by two distinct efficient methods namely: (i) implicit finite difference method or the Keller-Box Method (KBM) and (ii) Straight Forward Finite Difference Method (SFFD). Numerical results are presented by velocity and temperature distribution of the fluid as well as heat transfer characteristics, namely the shearing stress and the local heat transfer rate in terms of the local skin-friction coefficient and the local Nusselt number for a wide range of surface heating parameter and radiation-conduction parameter. Due to the effects of the radiation the skin-friction coefficients as well as the rate of heat transfer increased and consequently the momentum and thermal boundary layer thickness enhanced.
机译:在这项研究中,已对数值研究了辐射对等温圆柱体自然对流流动的影响。将控制的边界层运动方程转换为无量纲形式,并将所得的偏微分方程非线性系统简化为方便的边界层方程,然后通过两种有效的方法(即:i)隐式有限差分法对其进行数值求解。方法或Keller-Box方法(KBM)和(ii)直接有限差分法(SFFD)。数值结果由流体的速度和温度分布以及传热特性表示,即在广泛的表面加热范围内,根据局部皮肤摩擦系数和局部Nusselt数,剪切应力和局部传热速率参数和辐射传导参数。由于辐射的影响,皮肤摩擦系数以及热传递速率增加,因此动量和热边界层厚度增加。

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